Efficient 3D shape matching and retrieval using a concrete radialized spherical projection representation

作者:

Highlights:

摘要

We present a 3D shape retrieval methodology based on the theory of spherical harmonics. Using properties of spherical harmonics, scaling and axial flipping invariance is achieved. Rotation normalization is performed by employing the continuous principal component analysis along with a novel approach which applies PCA on the face normals of the model. The 3D model is decomposed into a set of spherical functions which represents not only the intersections of the corresponding surface with rays emanating from the origin but also points in the direction of each ray which are closer to the origin than the furthest intersection point. The superior performance of the proposed methodology is demonstrated through a comparison against state-of-the-art approaches on standard databases.

论文关键词:3D shape retrieval,Spherical harmonics,Descriptor's invariance

论文评审过程:Received 14 July 2006, Revised 13 December 2006, Accepted 19 December 2006, Available online 20 January 2007.

论文官网地址:https://doi.org/10.1016/j.patcog.2006.12.026